Authors
Srikanth, M., Jiang, S., Wellman, S. M., Sarkar, S., Lorman, D. E., Lantin, T., Runyan, A. M., Kumar, M., Sydney, E., Figueroa, H. Y., Yang, M., Wang, Q., Myeku, N.
Abstract
Immunoproteasome induction is prominent in Alzheimers disease (AD), but whether it protects proteostasis or amplifies neuroinflammation remains unresolved. Here, we generated immunoproteasome-deficient PS19 tauopathy and APP/human tau double-knock-in mice by crossing each disease model with L7M1 mice lacking two immunoproteasome catalytic subunits. Immunoproteasome deficiency increased phospho-tau burden, exacerbated amyloid beta pathology and heightened microglial reactivity without suppressing constitutive 26S proteasome activity. In primary microglia and longitudinal two-photon imaging, immunoproteasome-deficient microglia engaged and engulfed tau aggregate bearing material but failed to resolve internalized cargo, revealing a post-engulfment degradative checkpoint. Single-nucleus transcriptomics identified a remodeled P2ry12low/Trem2high microglial state with impaired phagolysosomal and mitochondrial programs. Reanalysis of human single-nucleus transcriptomic datasets showed that reduced microglial immunoproteasome expression was associated with cargo-processing gene-program changes similar to those observed in immunoproteasome-deficient mouse microglia. Together, these findings identify immunoproteasome biogenesis as a protective glial stress response that supports microglial aggregate clearance in AD.
Preprint server:
bioRxiv
The authors list and abstract were imported from bioRxiv on 21 Jul 2026.
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